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We hereby demonstrate that a facile SS modification results in up to 45.367 mA cm−3 current production at room temperature – the highest volumetric current density reported to date for BES bioanodes but that this benefit comes at a high risk of corrosion, which compromises the applicability of SS-based Microbial Fuel Cells.
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These results demonstrate that such a facile and rapid technique presented herein will provide an effective and promising strategy to design and fabricate high barrier MoS2/polymer nanocomposite films.
We also demonstrate that this facile, accurate and low-cost radiometric analysis can be further extended to accurately measure quantum yield of photochemical reactions and fluence values in actinometric systems.
These results collectively demonstrate that facile surface functionalization of 3-D scaffolds using MAP would be a promising strategy for successful tissue engineering applications.
Herein, we have demonstrated that this facile methodology can offer a rapid, reliable, and selective detection of Cu2+ with a detection limit as low as 20 nM and a linear range of 100 1600 nM.
Herein, it was demonstrated that this facile methodology could offer a rapid, reliable and selective detection of Sudan dyes, and the detection limits of Sudan I, II, III, and IV were 24.6, 32.7, 2.1, and 3.2 ng/mL, respectively.
These results demonstrated that using facile synthetic routes to constructing PDIs molecules with hydroxyl moiety was a useful strategy for designing high performance fluoride recognization.
Herein, we demonstrate a facile coating approach that can construct a thin acrylonitrile copolymer (ANC /graphene skin on the top-surface of the LiMn2O4 (LMO) cathode in a rechargeable hybrid aqueous lithium battery (ReHAB).
Here we demonstrate a facile electrophoretic technique that can be used to position phages with nanoscale precision on a surface to make use of nanophotonic effects to produce a new generation of assay for phages.
In this work, it was demonstrated that this facile methodology offers rapid, sensitive and reliable detection for cobalt ions with a detection limit as low as 3.252 × 10− 6 mol/L and a linearity range from 1.004 × 10− 5 to 1.004 × 10− 3 mol/L (r = 0.9990), which has promising application prospects.
This work demonstrates that the facile hydrothermal synthesis method for N-BOC sample combined with the associated efficient and durable visible light photocatalytic performance could provide an attractive and feasible technology for air cleaning.
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